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Accuracy analysis of a single-fault Markov model for FADEC system 被引量:1
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作者 CAI Jing HU Wei CAI Kunye 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2019年第5期1044-1052,共9页
Time-limited dispatching(TLD)analysis of the full authority digital engine control(FADEC)systems is an important part of the aircraft system safety analysis and a necessary task for the certification of commercial air... Time-limited dispatching(TLD)analysis of the full authority digital engine control(FADEC)systems is an important part of the aircraft system safety analysis and a necessary task for the certification of commercial aircraft and aeroengines.In the time limited dispatch guidance document ARP5107B,a single-fault Markov model(MM)approach is proposed for TLD analysis.However,ARP5107B also requires that the loss of thrust control(LOTC)rate error calculated by applying the single-fault MM must be less than 5%when performing airworthiness certification.Firstly,the sources of accuracy errors in three kinds of MM are analyzed and specified through a case study of the general FADEC system,and secondly a two-fault MM considering maintenance policy is established through analyzing and calculating the expected repair time when two related faults happen.Finally,a specific FADEC system is given to study on the influence factors of accuracy error in the single-fault MM,and the results show that the accuracy error of the single-fault MM decreases with the increase of short or long prescribed dispatch time,and the range values of short time(ST)and long time(LT)are determined to satisfy the requirement of accuracy error within 5%. 展开更多
关键词 full AUTHORITY digital engine control(FADEC)system MARKOV model(MM) accuracy analysis loss of thrust control(lotc)
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FADEC系统多故障TLD蒙特卡罗仿真分析
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作者 闫锋 侯甲栋 《计算机仿真》 北大核心 2021年第9期76-79,149,共5页
为提高飞机的利用率,以丧失推力控制(LOTC)为边界条件,研究航空发动机全权限数字电子控制系统(FADEC)冗余部件故障的限制派遣方法,分析FADEC系统多故障的维修性特点,提出多故障派遣的决策方法及维修策略,建立蒙特卡罗仿真的TLD分析步骤... 为提高飞机的利用率,以丧失推力控制(LOTC)为边界条件,研究航空发动机全权限数字电子控制系统(FADEC)冗余部件故障的限制派遣方法,分析FADEC系统多故障的维修性特点,提出多故障派遣的决策方法及维修策略,建立蒙特卡罗仿真的TLD分析步骤,融合FADEC系统可靠性模型,对FADEC系统进行蒙特卡罗模拟仿真得出多故障派遣时间。分析仿真结果可知,对于短时类(ST)和长时类(LT)组合的多故障可派遣间隔结束后应立即修理,不应延长故障保留时间。当派遣间隔超过7000h时不应采用多故障保留方式派遣。 展开更多
关键词 全权限数字电子控制 时间限制派遣 丧失推力控制事件 蒙特卡罗模拟
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